Decuplet Contributions to Hyperon Axial Vector Form Factors
Abstract
We consider the predictions of chiral perturbation theory for breaking in the axial vector form factor measured in semileptonic hyperon decays. We confirm that if only octet baryon intermediate states are included, the non-analytic corrections are . These corrections are dominated by an -symmetric wavefunction renormalization, which explains the fact that the ``corrected'' predictions still fit the data well. We argue that the large corrections are nonetheless strong evidence that this chiral expansion is breaking down. Following a recent suggestion of Jenkins and Manohar, we then include contributions from decuplet baryon intermediate states. Unlike these authors, we do not neglect the octet--decuplet mass difference . We find that the effects of significantly change the pattern of corrections: we still find that the decuplet corrections can cancel the large octet contributions in a non-trivial way, but the corrections no longer favor the values of the axial couplings. We also argue that and axial couplings cannot be reliably extracted from calculations which keep only the non-analytic corrections.
Cite
@article{arxiv.hep-ph/9305203,
title = {Decuplet Contributions to Hyperon Axial Vector Form Factors},
author = {Markus A. Luty and Martin White},
journal= {arXiv preprint arXiv:hep-ph/9305203},
year = {2014}
}
Comments
12 pages, 1 uuencoded figure, LBL-34040/CfPA-TH-93-10. The paper has been substatially expanded and revised. Some conclusions are changed